Use Kirchoff's rules to analyze the circuit below. Use the currents as given in the picture, and go around each loop clockwise. There is a junction at point "a". The resistors have resistances of R₁ = 29 D, R₂ = 40, and R, 6810 10 V www-ww Σ10 Ω a. Using the Junction Rule at junction "a", which current equals the sum of the other two? 11 b. Use the Loop Rule to write out an equation for the loop on the LEFT. Enter the number which multiplies each current. Include negative signs, if present. If a current doesn't appear in the equaton, enter zero. Number which multiplies current 1 biler Number which multiplies current l Number which multiplies current 1, 68 c. Use the Loop: 110 equation, enter zero. X out quation for the loop on the RIGHT, Enter the number which multiplies each current. Include negative signs, if present. If a currant doesn't appear in the Number which multiplies current 1 Number which multiples current l Number which multiplies current 13
Use Kirchoff's rules to analyze the circuit below. Use the currents as given in the picture, and go around each loop clockwise. There is a junction at point "a". The resistors have resistances of R₁ = 29 D, R₂ = 40, and R, 6810 10 V www-ww Σ10 Ω a. Using the Junction Rule at junction "a", which current equals the sum of the other two? 11 b. Use the Loop Rule to write out an equation for the loop on the LEFT. Enter the number which multiplies each current. Include negative signs, if present. If a current doesn't appear in the equaton, enter zero. Number which multiplies current 1 biler Number which multiplies current l Number which multiplies current 1, 68 c. Use the Loop: 110 equation, enter zero. X out quation for the loop on the RIGHT, Enter the number which multiplies each current. Include negative signs, if present. If a currant doesn't appear in the Number which multiplies current 1 Number which multiples current l Number which multiplies current 13
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